pressure (psig) 0.48 70 0.41 60 45 0.31 0.34 50 0.28 30 0.21 40 0.21 30 0.14 15 0.10 20 0.00 0.07 0 10 0 0.00 0 200 400 600 800 1000 Flow rate (slpm, N2) 0 400 800 1200 1600 2000 Flow rate (slpm, N2) ) If connection size differs, flow characteristics also differ. 55 High flow (Tied-diaphragm) Single Stage Regulator for General Applications Series AK9200 3/4 inch port size Inlet pressure
Applicable Controller Power Supply Voltage 100VAC Specification Series LJ1H10 Series LJ1H20 LJ1H1021H-K (8mm lead) LJ1H2021F-K (5mm lead) 250 400 225 350 12kg 6kg 200 300 175 250 Speed (mm/s) Speed (mm/s) 150 8kg 13kg 125 200 10kg 100 150 14kg 75 100 15kg 50 50 25 0 100 200 Stroke (mm) 300 400 0 100 200 300 400 500 600 Stroke (mm) When an actuator is operated under conditions that exceed
the weight of the work piece and the body. 2) Values in parentheses are those for side mount specification. 100 200 300 400 500 600 700 800 Stroke (mm) 900 1000 1100 1200 1300 1400 1500 Weight of body without motor (kg) 650 Stroke(mm) X axis 100 13.6 150 200 15.7 250 300 17.8 350 400 19.9 450 500 22.0 550 600 24.1 1500 43.0 Stroke(mm) X axis 700 26.2 750 800 28.3 850 900 30.4 950
400 400 L2 mm L2 mm L2 mm Rolling Yawing W 200 200 200 L2 M2 0 10 20 30 0 20 40 60 0 2 4 6 8 10 Work load (W) kg Work load (W) kg Work load (W) kg W 3000 2000 2000 a=1000 a=1000 a=1000 2000 L3 mm L3 mm L3 mm L3 1000 1000 1000 a=2000 a=2000 W a=2000 a=3000 a=3000 a=3000 M3 a 0 20 40 60 0 2 4 6 8 10 0 10 20 30 Work load (W) kg Work load (W) kg Work load (W) kg 600 600 600 400 400 400 Pitching
Heater assembly quantity 200/40 400/70 400/80 600/130 800/180 1200/300 1600/400 100V H5 120C 800/40 1600/80 1600/80 2400/130 3200/180 4800/300 6400/400 200V The inrush current of the heater flows for several ten seconds when using 100V while it flows for several seconds when using 200V. However, this inrush current decreases momentarily.
300 500 400 300 L-unit Air cushion 200 200 Caution 1002 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 400 50 1.
Bore size (mm) Holding force 25 245 N 32 400 N 40 628 N Note) The holding force is the locks ability to hold a static load that does not involve vibrations or impacts, when it is locked without a load. Therefore, when normally using the cylinder near the upper limit of the holding force, be aware of the points described below.
CX 100 10 20 30 4050 100 200 300 Thrust energy E2 400 500 Fs Fs + mgs Fsmgs CY W2 max W1 max W3 max Absorbed energy E E1 + E2 MQQ M Caution Allowable load (N) Symbol : Speed of impact object (m/s) F : Cylinder thrust (N) s : Shock absorber stroke (m) ML2B32 Horizontal collision: P = 0.5 MPa 1.
500 280 560 Data 10 4 8 7 6 5 MXY12 3 2.0 Shock absorber Rubber stopper screw 2 4 Load weight W kg 1.5 Metal stopper screw 3 1.0 1 100 50 200 300 400 560 2 100 50 200 300 400 500 Average speed Va mm/s Collision speed V mm/s 0.5 Average speed Va mm/s 0.0 Collision speed V mm/s 0 100 200 300 400 500 280 560 Note) Use the average speed when calculating static moment.
, 500 750 15 1 axis 200, 300, 400, 500, 600, 800 25 1200 25 200, 300, 400, 500, 600, 800, 1000 2 axes 1500 32 Note 1) Strokes exceeding the standard strokes are available as a special order.
Piston speed Caution The cylinder speed upper limit that retains the particle generation grade is 400 mm/s. Back matter 5 Clean series: Common Precautions 3 Be sure to read before handling. Refer to the main text for detailed precautions for every series.
For Air Upstream pressure of valve P1 z 1.0 MPa Downstream pressure of valve (P2) [MPa] 1.0 0.8 Subsonic Critical 0.9 0.6 pressure 0.8 0.7 Sonic 0.4 0.6 0.5 0.4 0.2 0.3 0.2 0.1 0 2 50 100 150 200 250 300 400 350 3 100 200 300 400 500 4 400 600 800 1,000 1,200 5 200 1,400 600 1,000 7 350 700 8 400 700 1,000 1,300 10 500 700 10 700 1,000 Flow rate Q [L/min (ANR)] How to read the graph The sonic
speed (mm/s) Collision speed (mm/s) L unit 1000 1000 Air cushion 500 400 300 500 400 300 L unit Air cushion 200 200 1002 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 400 50 Caution Load weight (kg) Load weight (kg) 1.
V as standard) Outdoor installation IPX4 (400 V as standard) HRS100/150 Standard type 1.0 5 to 35 HRSH090 Inverter type 0.1 5 to 40 Indoor use (400 V as standard, 200 V as an option) (Only 200 V as an option) Outdoor installation IPX4 HRSH Inverter type 0.1 5 to 35 (400 V as standard, 200 V as an option) (Only 200 V as an option) CH1 0.1 15 to 25 HRL Inverter dual type 26 kW Indoor use
V as standard) Outdoor installation IPX4 (400 V as standard) HRS100/150 Standard type 1.0 5 to 35 V V (400 V as standard, 200 V as an option) HRSH090 Inverter type 0.1 5 to 40 V Indoor use (Only 200 V as an option) (400 V as standard, 200 V as an option) Outdoor installation IPX4 HRSH Inverter type 0.1 5 to 35 V V V V V (Only 200 V as an option) 195 Thermo-chiller Basic Type HRSE Series
200 400 200 400 200 Pushing speed [mm/s] *2 35 or less 30 or less Actuator specifications Max. acceleration/deceleration[mm/s2] 5000 Positioning repeatability [mm] 0.01 Lost motion [mm] *3 0.1 or less Lead [mm] (including pulley ratio) 12 6 20 10 16 8 Impact/Vibration resistance [m/s2] *4 50/20 Ball screw Ball screw(In-line) Actuation type Belt[1.25:1] Ball screw Ball screwBelt(parallel)
Find the energy cost per hour of a double acting cylinder with an 80 mm. dia. and a 400 mm. stroke with t2 double strokes per minute and a working pressure of 6 bar In table 6.19 we see that an 80 mm dia. cylinder consumes 3.5 liters (approx.) per 100 mm stroke so: O /100 mm stroke . 400 mm stroke . number ot strokes per min . forward and retum stroke = 3.5 ' 4 . 24 = 336 Umin.
Load mass kg Load mass kg MY2HT25 Horizontal impact: P = 0.5MPa MY2H25 Horizontal impact: P = 0.5MPa 2000 1500 2000 1500 H unit Impact speed mm/s Impact speed mm/s Impact speed mm/s 1000 1000 H unit L unit 500 400 300 500 400 300 L unit Air cushion Air cushion Caution 200 200 Do not use a shock absorber and air cushion together. 100 1 2 3 4 5 10 20 50 40 1001 2 3 4 5 10 20 30 4050 30 Air
300 500 400 300 200 200 100 1 2 3 4 5 10 20 30 1002 3 4 5 10 20 30 0.5 40 50 100 Load weight (kg) Load weight (kg) 20 Horizontal collision: P = 0.5 MPa 40 Horizontal collision: P = 0.5 MPa 2000 1500 2000 1500 Collision speed (mm/s) Collision speed (mm/s) L unit 1000 1000 Air cushion 500 400 300 500 400 300 L unit Air cushion 200 200 1002 3 4 5 10 20 50 100 1 2 3 4 5 10 20 30 400 50 Caution
Find the energy cost per hour of a double acting cylinder with an 80 mm. dia. and a 400 mm. stroke with t2 double strokes per minute and a working pressure of 6 bar In table 6.19 we see that an 80 mm dia. cylinder consumes 3.5 liters (approx.) per 100 mm stroke so: O /100 mm stroke . 400 mm stroke . number ot strokes per min . forward and retum stroke = 3.5 ' 4 . 24 = 336 Umin.